244 lines
5.4 KiB
C
244 lines
5.4 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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*
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*
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* Copyright (C) 2019 liaoweixiong <liaoweixiong@gallwinnertech.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#include "nand_panic.h"
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#include "nand_lib.h"
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#include <linux/kernel.h>
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#include <linux/pstore_blk.h>
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#include <linux/types.h>
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#include <linux/printk.h>
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#include <linux/errno.h>
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#include <linux/string.h>
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#include <linux/fs.h>
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#define AW_NFTL_MAJOR 93
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#define PANIC_INFO(...) printk(KERN_INFO "[NI] " __VA_ARGS__)
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#define PANIC_DBG(...) printk(KERN_DEBUG "[ND] " __VA_ARGS__)
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#define PANIC_ERR(...) printk(KERN_ERR "[NE] " __VA_ARGS__)
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static dma_addr_t panic_dma;
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struct dma_buf {
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void *buf;
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size_t size;
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};
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static struct dma_buf panic_buf;
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static struct dma_buf panic_map;
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static struct _nftl_blk *g_nftl_blk;
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static sector_t g_start_sect;
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static sector_t g_sects;
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int nand_panic_read(char *buf, sector_t sec_off, sector_t sects)
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{
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struct _nftl_blk *nftl_blk = g_nftl_blk;
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if (!is_panic_enable()) {
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PANIC_ERR("not support panic nand\n");
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return -EBUSY;
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}
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if (!nftl_blk) {
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PANIC_ERR("invalid nftl_blk\n");
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return -EINVAL;
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}
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if (sec_off + sects > g_sects) {
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PANIC_ERR("sectors %llu with start sector %llu is out of range, \n",
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sects, sec_off);
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return -EACCES;
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}
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return panic_read(nftl_blk, sec_off + g_start_sect, sects, (uchar *)buf);
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}
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int nand_panic_write(const char *buf, sector_t sec_off, sector_t sects)
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{
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struct _nftl_blk *nftl_blk = g_nftl_blk;
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if (!is_panic_enable()) {
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PANIC_ERR("not support panic nand\n");
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return -EBUSY;
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}
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if (!nftl_blk) {
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PANIC_ERR("invalid nftl_blk\n");
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return -EINVAL;
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}
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if (sec_off + sects > g_sects) {
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PANIC_ERR("sectors %llu with start sector %llu is out of range, \n",
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sects, sec_off);
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return -EACCES;
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}
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return panic_write(nftl_blk, sec_off + g_start_sect, sects, (uchar *)buf);
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}
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static int rawnand_panic_alloc_dma_buf(size_t size)
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{
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char *buf;
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buf = dma_alloc_coherent(NULL, size, &panic_dma, GFP_KERNEL);
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if (!buf)
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return -ENOMEM;
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panic_buf.buf = buf;
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panic_buf.size = size;
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return 0;
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}
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static void rawnand_panic_free_dma_buf(void)
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{
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kfree(panic_buf.buf);
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panic_buf.buf = NULL;
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panic_buf.size = 0;
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}
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dma_addr_t nand_panic_dma_map(__u32 rw, void *buf, __u32 len)
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{
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if (!is_panic_enable())
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return -EBUSY;
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/* ONLY rawnand allow to use DMA */
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if (get_storage_type() != NAND_STORAGE_TYPE_RAWNAND)
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return -EINVAL;
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if (rw == 1) {
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size_t size = min_t(size_t, len, panic_buf.size);
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memcpy(panic_buf.buf, buf, size);
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} else {
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panic_map.buf = buf;
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panic_map.size = (size_t)len;
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}
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return panic_dma;
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}
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void nand_panic_dma_unmap(__u32 rw, dma_addr_t dma_handle, __u32 len)
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{
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if (!is_panic_enable())
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return;
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/* ONLY rawnand allow to use DMA */
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if (get_storage_type() != NAND_STORAGE_TYPE_RAWNAND)
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return;
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if (rw == 0) {
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size_t size = min_t(size_t, panic_map.size, panic_buf.size);
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memcpy(panic_map.buf, panic_buf.buf, size);
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}
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return;
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}
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struct match_part {
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dev_t devt;
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size_t start_sect;
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size_t sects;
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};
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#define MATCH_DEV_RETURN 1024
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static int match_by_devt(struct device *dev, void *data)
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{
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struct match_part *match = (struct match_part *)data;
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struct hd_struct *part;
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const char *disk_name;
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part = dev_to_part(dev);
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disk_name = dev_to_disk(dev)->disk_name;
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if (!strncmp(disk_name, "nand", 4) &&
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(disk_name[4] >= 'a' && disk_name[4] <= 'z')) {
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/* (nand) MBR partition table */
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if (match->devt == dev->devt) {
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match->sects = part_nr_sects_read(part);
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return MATCH_DEV_RETURN;
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}
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match->start_sect += part_nr_sects_read(part);
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} else {
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/* GPT partition table */
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if (match->devt == dev->devt) {
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match->sects = part_nr_sects_read(part);
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match->start_sect = part->start_sect;
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return MATCH_DEV_RETURN;
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}
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}
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return 0;
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}
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static int nand_fixup_part_size(dev_t devt, sector_t *sects,
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sector_t *start_sect)
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{
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struct match_part part = {0};
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int ret;
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part.devt = devt;
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ret = class_for_each_device(&block_class, NULL, &part, match_by_devt);
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if (ret != MATCH_DEV_RETURN)
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return -ENODEV;
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*start_sect = part.start_sect;
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*sects = part.sects;
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return 0;
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}
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int nand_support_panic(void)
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{
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panic_mark_enable();
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return 0;
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}
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int nand_panic_init(struct _nftl_blk *nftl_blk)
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{
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int ret;
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struct pstore_blk_info info = {};
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if (!is_panic_enable())
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return -EBUSY;
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PANIC_INFO("panic nand version: %s\n", PANIC_NAND_VERSION);
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/* allocate memory for rawnand dma transfer */
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if (get_storage_type() == NAND_STORAGE_TYPE_RAWNAND) {
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ret = rawnand_panic_alloc_dma_buf(32 * 1024);
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if (ret)
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goto err_out;
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}
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info.major = AW_NFTL_MAJOR;
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info.flags = 0;
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info.panic_write = nand_panic_write;
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ret = register_pstore_blk(&info);
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if (ret)
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goto err_free;
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g_nftl_blk = (void *)nftl_blk;
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g_sects = info.nr_sects;
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g_start_sect = info.start_sect;
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if (!NAND_SUPPORT_GPT) {
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/* nand partition do not use GPT is un-standard */
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PANIC_INFO("fixup panic nand parition size\n");
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ret = nand_fixup_part_size(info.devt, &g_sects, &g_start_sect);
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if (ret)
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goto err_out;
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}
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PANIC_INFO("panic nand init ok\n");
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return 0;
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err_free:
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rawnand_panic_free_dma_buf();
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err_out:
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PANIC_INFO("panic nand init failed\n");
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return ret;
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}
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